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Mathematical models of RNA silencing: Unidirectional amplification limits accidental self-directed reactions

机译:RNA沉默的数学模型:单向扩增可限制意外的自指导反应

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摘要

RNA silencing, found broadly throughout the eukaryotes, posttranscriptionally suppresses the expression of “aberrant” genes including those of many viruses and transposons. Similar to the specific immune system of vertebrates, RNA silencing works by generating specific responses against foreign elements and rapidly amplifying these responses to clear or otherwise inactivate the threat. Also like the vertebrate immune system, RNA-silencing systems risk making mistakes and mounting undesirable responses against the self. We develop a set of mathematical models of RNA silencing. We show that current models of RNA silencing do little to explain what prevents mistaken reactions from silencing vital organismal genes. We extend the basic models to show that the presumed unidirectional nature of the amplification process (namely, unidirectional RNA-directed RNA polymerase-mediated synthesis of secondary double-stranded RNA as observed in Caenorhabditis elegans) serves as a “safety mechanism” that safeguards against accidental generation of damaging self-directed reactions.
机译:RNA沉默广泛存在于真核生物中,转录后抑制“异常”基因的表达,包括许多病毒和转座子的基因。与脊椎动物的特定免疫系统相似,RNA沉默通过产生针对外源元件的特异性反应并迅速扩增这些反应来清除或灭活威胁而起作用。就像脊椎动物的免疫系统一样,RNA沉默系统也有犯错误的风险,并且会对自己产生不良反应。我们开发了一套RNA沉默的数学模型。我们表明,当前的RNA沉默模型几乎不能解释什么能够防止错误的反应沉默重要的生物基因。我们扩展了基本模型,以显示推测的扩增过程的单向性(即在秀丽隐杆线虫中观察到的单向RNA指导的RNA聚合酶介导的次级双链RNA的合成)充当了“安全机制”,可防止意外产生破坏性的自我指导反应。

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